Dynamical analysis of the nonlinear growth of the m=n=1 resistive internal mode
arXiv:physics/0303066 · doi:10.1103/PhysRevLett.90.095003
Abstract
A dynamical analysis is presented that self-consistently takes into account the motion of the critical layer, in which the magnetic field reconnects, to describe how the m=n=1 resistive internal kink mode develops in the nonlinear regime. The amplitude threshold marking the onset of strong nonlinearities due to a balance between convective and mode coupling terms is identified. We predict quantitatively the early nonlinear growth rate of the m=n=1 mode below this threshold.